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Design Precoded Space-Time-Frequency 4 × 1 and 4 × 2 OFDM Architectures in Frequency-Selective Fading Channels

机译:设计预编码的空时频率4×1和4×2 OFDM架构在频率选择性衰落通道中

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摘要

This paper presents precoded space-time-frequency (STF) 4 x 1 and 4 x 2 orthogonal frequency-division multiplexing (OFDM) systems in frequency-selective fading channels. First, a regular 2 x 1 space-time (ST) block code OFDM system is presented as the baseline. Second, further developing this 2 x 1 ST OFDM, both novel 4 x 1 and 4 x 2 STF OFDM architectures and computing algorithms are developed, specifically at a code rate 3/4. Third, four orthogonal transforms, Walsh-Hadamard, Slant, Harley, and Haar, are employed as the precoder to form four different 4x1 and 4x2 precoded STF OFDM systems, respectively. All four precoded systems improve the bit error rate (BER) without expanding power or bandwidth in comparing with the regular 4 x 1 and 4 x 2 STF OFDM schemes. Simulations indicate that the precoded 4x2 STF OFDM system has the best BER; the 4x2 STF OFDM system, the precoded 4 x 1 STF OFDM system, the 4 x 1 STF OFDM system, and the 2 x 1 ST OFDM system follow in order due to the achieved diversity order in fading channels. All systems are well-matched with the current OFDM system. They may serve as basic modules in the fourth-generation (4G) and future planned 5G multiple input multiple output (MIMO) OFDM systems.
机译:本文介绍了频率选择性衰落通道中的预编码时空(STF)4×1和4×2正交频分复用(OFDM)系统。首先,常规2×1时空(ST)块代码OFDM系统被呈现为基线。其次,进一步开发该2×1 ST OFDM,开发了新颖的4×1和4×2 STF OFDM架构和计算算法,具体地以码率3/4。第三,四个正交变换,沃尔什哈卡德,倾斜,哈雷和哈尔,用作预编码器,分别形成四种不同的4×1和4x2预编码的STF OFDM系统。所有四种预编码系统都可以在不扩展与常规4 x 1和4 x 2 STF方案的情况下,改善误码率(BER)而不扩展功率或带宽。模拟表明,预编码的4x2 STF OFDM系统具有最好的BER; 4x2 STF OFDM系统,预编码4 x 1 STF OFDM系统,4×1 STF OFDM系统,以及由于衰落通道中的多样性顺序而遵循2×1 St OFDM系统。所有系统都与电流OFDM系统良好匹配。它们可以作为第四代(4G)和未来计划5G多输入多输出(MIMO)OFDM系统中的基本模块。

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